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首页> 外文期刊>International Journal of Damage Mechanics >Impact Damage Resistance of CFRP Prepreg Laminates with Dispersed CSP Particles into Ply Interfaces
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Impact Damage Resistance of CFRP Prepreg Laminates with Dispersed CSP Particles into Ply Interfaces

机译:含CSP分散颗粒的CFRP预浸料层压板的抗冲击破坏性

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摘要

The effects of incorporating core shell polymer (CSP) particles within interply interfaces on the impact response of CFRP prepreg laminates are investigated. The impact tests were conducted on samples without and with CSP particles into the ply interfaces. The loads versus time curves were examined to determine the impact response and the associated energy absorption by the laminates were studied. The results indicate that both, the peak load of the laminates improved by 41% and damping index (DI) reduced by 90% with the dispersion of 51 g/m~2 of CSP particles within the prepreg ply interfaces of the laminates. It was noted that the CSP particles shielded the composites from the initial severity of impact. The energy absorbing mechanisms altered the supercritical response of the laminate to subcritical due to increase in the elastic energy stored within the laminates with CSP particles thereby changing the energy absorption modes. It was observed from macroscopic observations and SEM images of the damage sites that the damage mechanism and patterns changed and the extent of damage reduced with the addition of CSP particles.
机译:研究了将核壳聚合物(CSP)颗粒掺入中间界面对CFRP预浸料层压板的冲击响应的影响。冲击试验是在没有和有CSP颗粒进入层界面的样品上进行的。检查了负载与时间的关系曲线,以确定冲击响应,并研究了层压板的相关能量吸收。结果表明,随着51 g / m〜2的CSP颗粒在层压板的预浸料板界面内分散,层压板的峰值载荷提高了41%,阻尼指数(DI)降低了90%。值得注意的是,CSP颗粒可保护复合材料免受最初的撞击严重性的影响。能量吸收机制改变了层压材料对亚临界的超临界响应,这是由于存储在具有CSP颗粒的层压材料中的弹性能增加,从而改变了能量吸收模式。从宏观观察和损伤部位的SEM图像观察到,随着CSP颗粒的加入,损伤机理和模式发生了变化,损伤程度降低了。

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